[0001] This invention concerns fungicidal and/or plant growth regulating quinazoline derivatives,
processes for their preparation and compositions containing them.
[0002] There are numerous examples of imidazole and triazole derivatives having fungicidal
activity. Well known products include prochloraz (GB-A-1469772), triadimefon (GB-A-1364619)
and propiconazole (GB-A-1522657). We have now found that compounds where an imidazole
or triazole group is attached to a quinazoline ring have valuable fungicidal properties.
We are not aware of compounds of this type having such activity.
[0003] In one aspect, the invention provides a compound nf formula I:

wherein
A is oxygen or sulphur;
R1 is phenyl, optionally substituted by one or more groups which may be the same or
different and are selected from halo, C1-6-alkyl, phenoxy, trifluoromethyl and difluoromethoxy;
R2 is imidazol-1-yl or 1,2,4-triazol-1-yl; and
R3 is hydrogen or halogen, R4 and R5 are hydrogen, halogen or C1-6-alkyl and R6 is hydrogen or C1-6- alkyl.
[0004] Particularly preferred groups which R' may represent include phenyl, 4-chlorophenyl
and 2,4-dichlorophenyl.
[0005] At least two, and preferably three or four, of R
3―R
6 desirably represent hydrogen. Where only one of R
3―R
6 is other than hydrogen, it is preferably R
5. Examples of groups which R
3―R
6 may represent include chloro, bromo, iodo and methyl.
[0006] The compounds of formula I may be prepared by reaction of the corresponding compounds
of formula

where A, R
1, R
3, R
4, R
5 and R
6 are as defined hereinbefore and Hal is chlorine or bromine, is reacted with R
2H (i.e. imidazole or 1,2,4-triazole) in the presence of a base to give the desired
compound.
[0007] The base employed is preferably an alkali-metal hydroxide or carbonate, e.g. potassium
carbonate, and the reaction is desirably carried out in a suitable inert solvent medium,
e.g. dimethylformamide or acetonitrile.
[0008] The compounds of formula II may themselves be prepared by reaction of the corresponding
compounds of formula III:

where A, R
1, R
3, R
4, R
5 and R
6 are as defined hereinbefore, with S0
2Hal
2 is as defined hereinbefore.
[0009] The reaction is desirably effected in an inert solvent medium, e.g. chloroform, and
with heating, e.g. to reflux.
[0010] The compounds of formula III, where A is oxygen, may themselves be prepared by reaction
of the corresponding compounds of formula IV:

where R
3, R
4, R
5 and R
6 are as defined hereinbefore, with an isothiocyanate of the formula R
1NCS where R
1 is as defined hereinbefore.
[0011] The reaction is desirably effected in an anhydrous aprotic solvent, e.g. ethanol,
and with heating, e.g. to reflux.
[0012] The compounds of formula III, where A is sulphur, may be prepared from the compounds
of formula I, where A is oxygen, by methods known per se, e.g. by reaction with phosphorus
pentasulphide of Lawesson's reagent.
[0013] The compounds of formula IV are either known or may be prepared from known compounds
by methods known per se.
[0014] The compounds of formula II may alternatively be prepared by a process in which a
compound of formula V:

where A, R
1, R
3, R
4, R
5 and R
6 are as defined hereinbefore, is reacted in the presence of a base with POHal
3, where Hal is as defined hereinbefore.
[0015] The base employed is preferably an organic base, e.g. pyridine.
[0016] The compounds of formula V may themselves be prepared by reaction of the compounds
of formula VI:

wherein R
1, R
3, R
4, R
5 and R
6 are as defined hereinbefore, with an acid in a suitable solvent medium.
[0017] The acid employed is preferably hydrochloric acid, and the solvent is desirably an
alkanol, e.g. ethanol.
[0018] In their turn, the compounds of formula VI may be prepared from the compounds of
formula IV by reaction thereof with an isocyanate of formula R
1NCO where R
1 is as defined hereinbefore.
[0019] The quinazoline derivatives of formula I are fungicidal, possessing activity inter
alia against a wide range of phytopathogenic fungi, particularly phycomycetes, deuteromycetes,
ascomycetes and basidiomycetes orders, and wide range of fungi, e.g. powdery mildew
(Erysiphe graminis) on cereal crops such as wheat, barley, oats and rye and other
cereal diseases such as glume blotch (Septoria nodorum), leaf blotch (Rhynchosporium
secalis), eyespot (Pseudocercosporella herpotrichoides), rusts (e.g. Puccinia graminis)
and take-all (Gaeumannomyces graminis). Some compounds of the present invention can
be used to control seed borne organisms such as bunt (Tilletia caries) on wheat, loose
smut (Ustilago nuda and Ustilago hordei) on barley and oats, leaf spot (Pyrenophora
avenae) on oats and leaf stripe (Pyrenophora graminis) on barley. The compounds can
be used against powdery mildews of other crops, e.g. cucumber powdery mildew (E. cichoracearum),
apple powdery mildew (Podosphora leucotricha) and vine powdery mildew (Uncinula necator).
They can also be applied to rice for control of rice blast (Pyricularia oryzae) and
to horticultural crops such as apple trees for the control of apple scab (Venturia
inaequalis).
[0020] In another aspect, therefore, the invention provides a method of combating fungi
at a locus infested or liable to be infested therewith, which comprises applying to
the locus an effective amount of one or more compounds of formula I.
[0021] The invention also provides a method of regulating the growth of plants which comprises
applying to said plants a growth regulating amount of one or more compounds of formula
I.
[0022] The present compounds are normally employed in the form of compositions containing
a surface active agent and/or a carrier.
[0023] The compositions will normally be produced initially containing from 0.5 to 99%,
preferably from 0.5 to 85%, and more usually from 10 to 50% by weight of the present
compounds, which are diluted if necessary before application to the locus to be treated
such that the concentration of active ingredient in the formulation applied is from
0.05 to 5% by weight.
[0024] The carrier may be water, in which case an organic solvent may also be present, though
this is not usually employed. A flowable suspension concentrate may be formed by grinding
the compound with water, a wetting agent and a suspending agent, e.g. xanthan gum.
[0025] The carrier may alternatively be a water immiscible organic solvent, e.g. a hydrocarbon
which boils within the range 130-270
0C, e.g. xylene, in which the compound is dissolved or suspended. An emulsifiable concentrate
containing a water immiscible solvent may be formed with a surface active agent so
that the concentrate acts as a self-emulsifiable oil on admixture with water.
[0026] The carrier may alternatively be a water-miscible organic solvent e.g. 2-methoxy
ethanol, methanol, propylene glycol, diethylene glycol, diethylene glycol monoethyl
ether, formamide or methylformamide.
[0027] The carrier may alternatively be a solid, which may be finely divided or granular.
Examples of suitable solids are limestone, clays, sand, mica, chalk, attapulgite,
diatomite, perlite, sepiolite, silicas, silicates, lignosulphonates and solid fertilizers.
The carrier can be of natural or synthetic origin or can be modified natural material.
[0028] Wettable powders soluble or dispersible in water may be formed by admixing the compound
in particulate form with a particulate carrier or spraying molten compound on to the
particulate carrier, admixing a wetting agent and a dispersing agent and finely grinding
the whole powder mixture.
[0029] An aerosol composition may be formed by admixing the compound with a propellant,
e.g. a polyhalogenated alkane such as dichlorofluoromethane, and suitably also with
a solvent.
[0030] The term 'surface active agent' is used in the broad sense to include materials variously
called emulsifying agents, dispersing agents and wetting agents. Such agents are well
known in the art.
[0031] The surface active agents used may comprise anionic surface active agents, for example
mono- or diesters of phosphoric acid with a fatty alcohol ethoxylate, or salts of
such esters, fatty alcohol sulphates such as sodium dodecyl sulphate, ethoxylated
fatty alcohol sulphates, ethoxylated alkylphenol sulphates, lignin sulphates, petroleum
sulphonates, alkylaryl sulphonates such as alkyl-benzene sulphonates or lower alkylnaphthalene
sulphonates, salts of sulphonated naphthaleneformaldehyde condensates, salts of sulphonated
phenolformaldehyde condensates, or more complex sulphonates such as the amide sulphonates,
e.g. the sulphonated condensation product of oleic acid and N-methyl taurine or the
dialkyl sulphosuccinates e.g. the sodium sulphonate of dioctyl succinate.
[0032] The surface active agents may also comprise non-ionic agents, for example condensation
products or fatty acid esters, fatty alcohols, fatty acid amides or alkyl-substituted
phenols with ethylene oxide, fatty esters of polyhydric alcohol ethers e.g. sorbitan
fatty acid esters, condensation products of such esters with ethylene oxide e.g. polyoxyethylene
sorbitan fatty acid esters, block copolymers of ethylene oxide and propylene oxide,
acetylenic glycols such as 2,4,7,9-tetramethyl-5-decyn-4,7-diol, or ethoxylated acetylenic
glycols.
[0033] The surface active agents may also comprise cationic agents, for example alkyl- and/or
aryl-substituted quaternary ammonium compounds such as cetyl trimethylammonium bromide,
or ethoxylated tertiary fatty amines.
[0034] Preferred surface active agents include ethoxylated fatty alcohol sulphates, lignin
sulphonates, alkylaryl sulphonates, salts of sulphonated naphthaleneformaldehyde condensates,
salts of sulphonated phenolformaldehyde condensates, sodium oleoyl N-methyltauride,
dialkyl sulphossucinates, alkyl phenol ethoxylates, and fatty alkyl ethoxylates.
[0035] The compounds of the invention may of course be used in conjunction with one or more
further active ingredients, for example compounds known to possess plant-growth regulant,
herbicidal, fungicidal, insecticidal or acaricidal properties. Alternatively the compounds
of the invention can be used in sequence with the other active ingredient. Fungicides
which can be used in conjunction with the compounds of the present invention include
maneb, zineb, mancozeb, thiram, ditalimfos, tridemorph, fenpropimorph, fenpropidine,
imazalil, propiconazole, triadimefon, triadimenol, dichlobutrazol, fluotrimazole,
ethirimol, fenarimol, nuarimol, triforine, pyracarbolid, tolclofos-methyl, oxycarboxin,
carbendazim, benomyl, thiophanate, thiophanate-methyl, thiabendazole, propineb, metalaxyl,
dicloran, dithianon, fuberidazole, dodine, chlorothalonil, cyprofuram, dichlofluanid,
sulphur, copper compounds, iprodione, ziram, nabam, prochloraz (and metal complexes
of this e.g. the manganese chloride complex), zineb-ethylene thiuram sulphide adduct,
captan, captafol, benodanil, mepronil, caroxin, guazatine, validamycin, vinclozolin,
tricyclazole, quintozerie, pyrazophos, furmecyclox, propamocarb, procymidone, kasugamycin,
furalaxyl, folpet, fenfuram, ofurace, etridiazole, fosetyl aluminium, methfuroxam,
fentin hydroxide, IBP, cycloheximide, binapacryl, dodemorph, dimethirimol, bupirimate,
nitrothal isopropyl, quinomethionate, bitertanol, fluotolanil, etaconazole, fenpropidine,
flubenzimine, cymoxanil, flutriafol, fenpentezol, declopentezol, penconazole, oxadixyl,
myclobutanil, DPX 6573, hymexazol, anilazine, myclozolin, metomeclan, chlozolinate
and benalaxyl.
[0036] In the method of the invention the compound is generally applied to seeds, plants
or their habitat. Thus, the compound can be applied directly to the soil before, at
or after drilling so that the presence of active compound in the soil can control
the growth of fungi which may attack seeds. When the soil is treated directly the
active compound can be applied in any manner which allows it to be intimately mixed
with the soil such as by spraying, by broadcasting a solid form of granules, or by
applying the active ingredient at the same time as drilling by inserting it in the
same drill as the seeds. A suitable applications rate is within the range of from
0.05 to 20 kg per hectare, more preferably from 0.1 to 10 kg per hectare.
[0037] Alternatively the active compound can be applied directly to the plant by, for example,
spraying or dusting either at the time when the fungus has begun to appear on the
plant or before the appearance of fungus as protective measure. In both such cases
the preferred mode of application is by foliar spraying. It is generally important
to obtain good control of fungi in the early stages of plant growth as this is the
time when the plant can be most severely damaged. For cereal crops such as wheat,
barley and oats it is often desirable to spray the plant at or before growth stage
5 although additional treatments by spraying when the plant is more mature can augment
resistance to the growth or spread of fungi. The spray or dust can conveniently contain
a pre- or post-emergence herbicide if this is thought necessary. Sometimes, it is
practicable to treat the roots of a plant before or during planting, for example,
by dipping the roots in a suitable liquid or solid composition. When the active compound
is applied directly to the plant a suitable rate of application is from 0.01 to 10
kg hectare, preferably from 0.05 to 5 kg per hectare.
[0038] The invention is illustrated in the following Examples. Structures of isolated novels
compounds were confirmed by elemental and/or other appropriate analyses.
Example 1
[0039] Phenyl isothiocyanate (28.3 g) was added to anthranilic acid (28.7 g) in absolute
alcohol (250 ml) and heated at reflux for 4.5 hours. The mixture was cooled to room
temperature and the solid removed by filtration to give 32.5 g of 3-phenyl-2,3-thioxoquinazolin-4(l
H)-one, mp 287-291°C. Sulphuryl chloride (5.4 ml) was added dropwise at room temperature
to a suspension of this product (32.5 g) in chloroform (250 ml). The mixture was heated
at reflux for 4 hours. When cool it was poured into water (400 ml), filtered and the
solid washed with dichloromethane. The organic layer was separated from the filtrate,
dried and concentrated in vacuo. The residue was extracted with ether, filtered and
filtrate concentrated in vacuo to give an oil which solidified on standing. This was
recrystallised from cyclohexane to give crude 2-chloro-3-phenylquinazolin-4(3H)-mp
102-5°C (shown to be 90% pure by high pressure liquid phase chromatography (hplc).
A mixture of this product (3.85 g), imidazole (1.02 g) and potassium carbonate (2.07
g) in acetonitrile (60 ml) was heated at reflux for 4 hours. The mixture was cooled
to room temperature, and concentrated in vacuo. The residue was chromatographed on
silica using light petroleum (bp 60-80°C)/ ethyl acetate (1:1) as eluant. The resulting
solid was recrystallised from cyclohexane to give 0.8 g of 3-phenyl-2-(imidazol-1-yl)-quinazolin-4(3H)-one.
mp. 163-5°C. (Compound 1).
Example 2
[0040] 2-(4-Chlorophenylaminocarbonylamino)-5-iodobenzoic acid was prepared by adding as
solution of 4-chlorophenyl isocyanate (15.4 g) in ethyl acetate (60 ml) dropwise,
at room temperature, to a stirred suspension of 5-iodoanthranilic acid (26.3 g) in
ethyl acetate (150 ml). The mixture was heated at reflux for 1 hour, cooled to ambient
temperature and the solid removed by filtration, to give 34 g of the substituted benzoic
acid. This (34 g) was added to absolute alcohol (250 ml) saturated with hydrogen chloride
gas and heated at reflux for 40 minutes. When cool the solid was filtered and washed
with absolute alcohol (50 ml) to give 27.1 g of 3-(4-chlorophenyl)-6-iodoquinazoline-2,4(1
H,3H)-dione, mp 3246°C. This product (26.9 g) was added slowly to a mixture of pyridine
(25 ml) and phosphoryl chloride (250 ml). The mixture was heated at reflux for 6 hours,
when a solution developed. When cool, excess phosphoryl chloride and pyridine were
removed by distillation in vacuo. The residue was cautiously added to ice water (500
ml) and the solid filtered. This solid was extracted with dichloromethane (100 ml),
the extract concentrated in vacuo and chromatographed on silica using dichloromethane
to give 9.7 g of 2-chloro-3-(4-chlorophenyl)-6-iodo- quinazolin-4(3H)-one, mp 178-180°C.
This was then treated with 1,2,4-triazole and potassium carbonate in a similar manner
to Example 1 to give 3-(4-chlorophenyl)-2-(1,2,4-triazol-1-yl)-6-iodoquinazolin-4(3H)-one,
mp 206-208°C. (Compound 2).
Example 3
[0041] In a similar manner to Example 1 or 2, the following compounds were obtained. In
the table, in the column headed R
2, lm = imidazol-1-yl and T = 1,2,4-triazol-1-yl.

Example 4
[0042] A mixture of phosphorus pentasulphide (46.7 g) and 2-(2,4-dichlorophenyl)-2,3-dihydro-2-thioxo-
quinazo!in-4(1H)-one (32.3 g) in xylene (500 ml) was heated at reflux for 4 hours.
The hot liquid was then decanted and the residue extracted with boiling xylene (100
ml) and the extract combined with the previously decanted liquid. The extracts were
cooled to 5°C and the orange solid which resulted was removed by filtration. 15 g
of this solid was purified on a silica column using petroleum ether (bp 60―80°C)/
ethyl acetate (1:1) as eluant to give 3-(2,4-dichlorophenyl)-2,3-dihydroquinazoline-2,4(1H,3H)-dithione,mp
218-20°C. This was then treated with sulphuryl chloride, in a similar manner to Example
1, to give crude 2-chloro-3-(2,4-dichlorophenyl)quinazoline-4(3H)-thione which was
then treated with 1,2,4-triazole to give 3-(2,4-dichlorophenyl)-2-(1,2,4-triazol-I-yl)-quinazoline-4(3H)-thione,
mp 184―6°C. (Compound 35).
[0043] In a similar manner, there was also obtained 3-(2,4-dichlorophenyl)-2-(imidazol-1-yl)-quinazoline-4(3H)-thione,
mp 133-5°C. (Compound 36).
Example 5
Compounds of the invention were subjected to various tests
[0044]
a) Fungicide tests
Compounds are assessed for activity against the following:
Puccinia recondita: brown leaf rust of wheat (PR)
Erysiphe graminis: barley powdery mildew (EG)
Pyricularia oryzae: rice blast (PO).
[0045] The compounds listed below were formulated in aqueous acetone with Tween 20 wetter
to give a concentration of 500 ppm compound/125 ppm wetter/20,000 ppm acetone. For
cereals, Pluronic L61 (ethylene oxide/propylene oxide block copolymer) was added (1000
ppm) as an additional wetter. Plants were then treated with the diluted suspensions
and then inoculated, 24 hours after treatment with test compound, by spraying with
spore suspensions of the fungi and then incubating in a humid atmosphere: >98% RH,
as summarised in Table 1.

[0046] After the appropriate period of incubation, the degree of infection of the leaf surface
was visually estimated.
[0047] Compounds were considered active if they gave greater then 50% control of the disease
at a concentration of 500 ppm (w/v) or less.
b) Plant growth regulant tests (PGRJ
[0048] Mung bean (MB) seeds were sown in pots containing coarse grade vermiculite (3-5 seeds
per 6 cm pot). Five days later each pot was placed in approximately 100 ml of an aqueous
dispersion of the chemical under test and shoots which had emerged were sprayed to
run-off with a portion of test liquid. Eight days later the heights of the seedlings
were measured and compared with control plants. Similar tests were also carried out
on barley (B) and sunflower (S). Compounds are considered active if they gave a reduction
of at least 20% in height compared with controls at rate of 100 mg/L or less.
[0049] Activities were demonstrated as follows (+ = active).

Example 6
[0050] This example illustrates typical concentrates that can be formulated from compounds
of the invention.
[0051]

1. A compound of the formula:

where:
A is oxygen or sulphur;
R1 is phenyl, optionally substituted by one or more groups which may be the same or
different and are selected from halo, C1-6-alkyl, phenoxy, trifluoromethyl and difluoromethoxy;
R2 is imidazol-1-yl or 1,2,4-triazol-1-yl; and
R3 is hydrogen or halogen, R4 and R5 are hydrogen, halogen or C1-6-alkyl and R6 is hydrogen or C1-6- alkyl.
2. A compound according to claim 1 in which A is oxygen.
3. A compound according to claim 2 in which R' is phenyl, 4-chlorophenyl or 2,4-dichlorophenyl.
4. A compound according to claim 3 in which at least three of R3―R6 are hydrogen.
5. 3-(4-Chlorophenyl)-2-(1,2,4-triazol-1-yl)-quinazolin-4(3H)-one.
6. 3-Phenyl-2-(imidazol-1-yl)-quinazolin-4(3H)-one.
7. 3-(2,4-dichlorophenyl)-2-(1,2,4-triazol-1-yl)-quinazolin-4(3H)-one.
8. 3-(2,4-Dichlorophenyl)-2-(imidazol-1-yl)-quinazolin-4(3H)-one.
9. 3-(4-Chlorophenyl)-2-(1,2,4-triazol-1-yl)-6-iodoquinazolin-4(3H)-one.
10. 3-(2,4-Dichlorophenyl)-2-(1,2,4-triazol-1-yl)-6-iodoquinazolin-4(3H)-one.
11. 3-(2,4-Dichlorophenyl)-2-(1,2,4-triazol-1-yl)-6-bromoquinazolin-4(3H)-one.
12. 3-(2,4-Dichlorophenyl)-2-(1,2,4-triazol-1-yl)-6-chloroquinazolin-4(3H)-one.
13. 3-(2,4-Dichlorophenyl)-2-(imidazol-1-yl)-6-chloroquinazolin-4(3H)-one.
14. A fungicidal or plant growth regulant composition which comprises a compound claimed
in claim 1 in admixture with an agriculturally acceptable diluent or carrier.
1. Verbindungen der Formel I

in der
A Sauerstoff oder Schwefel ist,
R' freies Phenyl oder Phenyl, welches ein- oder mehrfach, gleich oder verschieden
durch Halogen, C1-6-Alkyl, Phenoxy, Trifluormethyl oder Difluormethoxy substituiert sein kann,
R2 Imidazol-1-yl oder 1,2,4-Triazol-1-yl ist,
R3 Wasserstoff oder Halogen ist,
R4 und R5 Wasserstoff, Halogen oder C1-6-Alkyl sind und
R6 Wasserstoff oder C1-6-Alkyl ist.
2. Verbindungen gemäß Anspruch 1, wobei A Sauerstoff ist.
3. Verbindungen gemäß Anspruch 2, wobei R1 Phenyl, 4-Chlorphenyl oder 2,4-Dichlorphenyl ist.
4. Verbindungen gemäß Anspruch 3, wobei mindestens drei von R6 Wasserstoff sind.
5. 3-(4-Chlorphenyl)-2-(1,2,4-triazol-1-yl)-chinazolin-4(3H)-on.
6. 3-Phenyl-2-(imidazol-1-yl)-chinazolin-4(3H)-on.
7. 3-(2,4-Dichlorphenyl)-2-(1,2,4-triazol-1-yl)-chinazolin-4(3H)-on.
8. 3-(2,4-Dichlorphenyl)-2-(imidazol-1-yl)-chinazolin-4(3H)-on.
9. 3-(4-Chlorphenyl)-2-(1,2,4-triazol-1-yl)-6-iodchinazolin-4(3H)-on.
10. 3-(2,4-Dichlorphenyl)-2-(1,2,4-triazol-1-yl)-6-iodchinazolin-4(3H)-on.
11.3-(2,4-Dichlorphenyl)-2-(1,2,4-triazol-1-yl)-6-bromchinazolin-4(3H)-on.
12. 3-(2,4-Dichlorphenyl)-2-(1,2,4-triazol-1-yl)-6-chlorchinazolin-4(3H)-on.
13. 3-(2,4-Dichlorphenyl)-2-(imidazol-1-yl)-6-chlorchinazolin-4(3H)-on.
14. Ein fungizides oder pflanzenwachstumsregulierendes Mittel, bestehend aus einer
Verbindung gemäß Anspruch 1, in Mischung mit einem für die Landwirtschaft verträglichen
Träger ode Verdünnungsmittel.
1. Composé de formule:

où
A est un atome d'oxygène ou de soufre;
R' est un radical phényle éventuellement substitué par un ou plusieurs radicaux qui
peuvent être identiques ou différents et sont choisis parmi halo, C1-6-alcoyle, phénoxy, trifluorométhyle et difluoro- méthoxy;
R2 est un radical imdiazol-1-yle ou 1,2,4-triazol-1-yle;
R3 est un atome d'hydrogène ou d'halogène;
R4 et R5 sont des atomes d'hydrogène ou d'halogène ou radicaux C1-6-alcoyle, et
R6 est un atome d'hydrogène ou radical C1-6-alcoyle.
2. Composé suivant la revendication 1, dans lequel A est un atome d'oxygène.
3. Composé suivant la revendication 2, dans lequel R' est un radical phényle, 4-chlorophényle
ou 2,4-dichlorophényle.
4. Composé suivant la revendication 3, dans lequel au moins trois d'entre R3 à R6 sont ds atomes d'hydrogène.
5. La 3-(4-chlorophényl)-2-(1,2,4-triazol-1-yl)-quinazoline-4(3H)-one.
6. La 3-phényl-2-(imidazol-1-yl)-quinazoline-4(3H)-one.
7. La 3-(2,4-dichlorophényl)-2-(1,2,4-triazol-1-yl)-quinazoline-4(3H)-one.
8. La 3-(2,4-dichlorophényl)-2-(imidazol-1-yl)-quinazoline-4(3H)-one.
9. La 3-(4-chlorophényl)-2-(1,2,4-triazol-1-yl)-6-iodoquinazoline-4(3H)-one.
10. La 3-(2,4-dichlorophényl)-2-(1,2,4-triazol-1-yl)-6-iodoquinazoline-4(3H)-one.
11. La 3-(2,4-dichlorophényl)-2-(1,2,4-triazol-1-yl)-6-bromoquinazoline-4(3H)-one.
12. La 3-(2,4-dichlorophényl)-2-(1,2,4-triazol-1-yl)-6-chloroquinazoline-4(3H)-one.
13. La 3-(2,4-dichlorophényl)-2-(imidazol-1-yl)-6-chloroquinazoline-4(3H)-one.
14. Composition fongicide ou régulatrice de la croissance des plantes, qui comprend
un composé suivant la revendication 1 en mélange avec un diluant ou excipient acceptable
en agriculture.